Partial pressure of component A in mixture 1 Solution

STEP 0: Pre-Calculation Summary
Formula Used
Partial Pressure of Component A in Mixture 1 = Partial Pressure of Component B in Mixture 2-Partial Pressure of Component B in Mixture 1+Partial Pressure of Component A in Mixture 2
Pa1 = Pb2-Pb1+Pa2
This formula uses 4 Variables
Variables Used
Partial Pressure of Component A in Mixture 1 - (Measured in Pascal) - Partial Pressure of Component A in Mixture 1 is the pressure exerted by component A in a mixture of gases during convective mass transfer.
Partial Pressure of Component B in Mixture 2 - (Measured in Pascal) - Partial Pressure of Component B in Mixture 2 is the pressure exerted by component B in a mixture of gases during convective mass transfer.
Partial Pressure of Component B in Mixture 1 - (Measured in Pascal) - Partial Pressure of Component B in Mixture 1 is the pressure exerted by component B in a mixture of gases during convective mass transfer processes.
Partial Pressure of Component A in Mixture 2 - (Measured in Pascal) - Partial Pressure of Component A in Mixture 2 is the pressure exerted by component A in a mixture of gases during convective mass transfer.
STEP 1: Convert Input(s) to Base Unit
Partial Pressure of Component B in Mixture 2: 10500 Pascal --> 10500 Pascal No Conversion Required
Partial Pressure of Component B in Mixture 1: 11000 Pascal --> 11000 Pascal No Conversion Required
Partial Pressure of Component A in Mixture 2: 11200 Pascal --> 11200 Pascal No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Pa1 = Pb2-Pb1+Pa2 --> 10500-11000+11200
Evaluating ... ...
Pa1 = 10700
STEP 3: Convert Result to Output's Unit
10700 Pascal --> No Conversion Required
FINAL ANSWER
10700 Pascal <-- Partial Pressure of Component A in Mixture 1
(Calculation completed in 00.004 seconds)

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Partial pressure of component A in mixture 1 Formula

​LaTeX ​Go
Partial Pressure of Component A in Mixture 1 = Partial Pressure of Component B in Mixture 2-Partial Pressure of Component B in Mixture 1+Partial Pressure of Component A in Mixture 2
Pa1 = Pb2-Pb1+Pa2

What is Partial Pressure?

Partial pressure is the pressure exerted by a specific component of a gas mixture in a container. It is the pressure that the gas would exert if it occupied the entire volume of the mixture alone at the same temperature. The total pressure of the gas mixture is the sum of the partial pressures of all its components, as described by Dalton's Law of Partial Pressures. Partial pressure is important in various fields, including chemistry, meteorology, and respiratory physiology, as it influences gas solubility, chemical reactions, and the behavior of gases in different environments.






How to Calculate Partial pressure of component A in mixture 1?

Partial pressure of component A in mixture 1 calculator uses Partial Pressure of Component A in Mixture 1 = Partial Pressure of Component B in Mixture 2-Partial Pressure of Component B in Mixture 1+Partial Pressure of Component A in Mixture 2 to calculate the Partial Pressure of Component A in Mixture 1, Partial pressure of component A in mixture 1 formula is defined as the pressure exerted by component A in a mixture, which is a critical parameter in understanding the behavior of gases in convective mass transfer processes, particularly in industrial applications where gas mixtures are involved. Partial Pressure of Component A in Mixture 1 is denoted by Pa1 symbol.

How to calculate Partial pressure of component A in mixture 1 using this online calculator? To use this online calculator for Partial pressure of component A in mixture 1, enter Partial Pressure of Component B in Mixture 2 (Pb2), Partial Pressure of Component B in Mixture 1 (Pb1) & Partial Pressure of Component A in Mixture 2 (Pa2) and hit the calculate button. Here is how the Partial pressure of component A in mixture 1 calculation can be explained with given input values -> 10700 = 10500-11000+11200.

FAQ

What is Partial pressure of component A in mixture 1?
Partial pressure of component A in mixture 1 formula is defined as the pressure exerted by component A in a mixture, which is a critical parameter in understanding the behavior of gases in convective mass transfer processes, particularly in industrial applications where gas mixtures are involved and is represented as Pa1 = Pb2-Pb1+Pa2 or Partial Pressure of Component A in Mixture 1 = Partial Pressure of Component B in Mixture 2-Partial Pressure of Component B in Mixture 1+Partial Pressure of Component A in Mixture 2. Partial Pressure of Component B in Mixture 2 is the pressure exerted by component B in a mixture of gases during convective mass transfer, Partial Pressure of Component B in Mixture 1 is the pressure exerted by component B in a mixture of gases during convective mass transfer processes & Partial Pressure of Component A in Mixture 2 is the pressure exerted by component A in a mixture of gases during convective mass transfer.
How to calculate Partial pressure of component A in mixture 1?
Partial pressure of component A in mixture 1 formula is defined as the pressure exerted by component A in a mixture, which is a critical parameter in understanding the behavior of gases in convective mass transfer processes, particularly in industrial applications where gas mixtures are involved is calculated using Partial Pressure of Component A in Mixture 1 = Partial Pressure of Component B in Mixture 2-Partial Pressure of Component B in Mixture 1+Partial Pressure of Component A in Mixture 2. To calculate Partial pressure of component A in mixture 1, you need Partial Pressure of Component B in Mixture 2 (Pb2), Partial Pressure of Component B in Mixture 1 (Pb1) & Partial Pressure of Component A in Mixture 2 (Pa2). With our tool, you need to enter the respective value for Partial Pressure of Component B in Mixture 2, Partial Pressure of Component B in Mixture 1 & Partial Pressure of Component A in Mixture 2 and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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